首页> 外文期刊>Desalination: The International Journal on the Science and Technology of Desalting and Water Purification >Open porous hydrophilic supported thin-film composite forward osmosis membrane via co-casting for treatment of high-salinity wastewater
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Open porous hydrophilic supported thin-film composite forward osmosis membrane via co-casting for treatment of high-salinity wastewater

机译:通过共铸处理高盐度废水的开放多孔亲水负载薄膜复合前渗透膜

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摘要

High-performance thin film composite (TFC) forward osmosis (FO) membranes with a low degree of internal concentration polarization (ICP) are critical for concentrating high-salinity wastewaters. This report focuses on the preparation of TFC FO membranes via a sacrificial approach. In order to improve the FO flux, hydrophilicity and morphology of the support membrane were mainly investigated. The hydrophilicity of the polysulfone (PSF) substrate was tuned by blending with sulfonated poly (ether ether ketone) (SPEEK), and the resulting SPEEK blended PSF membrane was denoted as SPSF substrate. The pore structure of the SPSF membrane was tailored by the application of a co-casting technique, which yielded a TFC membrane with a structure parameter (S) of 191 mu m. In contrast, the TFC membranes based on the PSF and SPSF substrates through single layer casting showed S values of 527 mu m and 361 mu m, respectively. These results indicate that the combined hydrophilicity and open pore structure are responsible for the lowered S value. Further application of the hydrophilic substrate based TFC membranes in the treatment of high salinity wastewaters (10 wt%) demonstrated the higher initial water flux (283 L/m(2.)h) with a water recovery rate of 532% in comparison to the TFC membrane based on the pristine PSF through the single layer casting. This new method paves a way to generate high-performing FO membranes. (C) 2016 Elsevier B.V. All rights reserved.
机译:具有低质量偏振(ICP)的高性能薄膜复合(TFC)前渗透(FO)膜(ICP)对于浓缩高盐度废水至关重要。本报告侧重于通过牺牲方法制备TFC FO膜。为了改善Fo焊剂,主要研究了支撑膜的亲水性和形态。通过用磺化聚(醚醚酮)(Speek)与磺化聚(醚醚酮)(Speek)混合来调节聚砜(PSF)衬底的亲水性,并将所得的Speek混合的PSF膜表示为SPSF底物。通过施加共铸技术来定制SPSF膜的孔结构,其产生具有191μm的结构参数的TFC膜。相反,通过单层浇铸的基于PSF和SPSF基板的TFC膜显示出527μm和361μm的S值。这些结果表明,组合的亲水性和开放孔结构对降低的S值负责。进一步在高盐度废水处理中施加亲水基材的TFC膜(10wt%)证明了较高的初始水通量(283l / m(2.)h),水回收率与532%相比通过单层铸件基于原始PSF的TFC膜。这种新方法铺设了一种产生高性能FO膜的方法。 (c)2016 Elsevier B.v.保留所有权利。

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